Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 1 |
Since 2016 (last 10 years) | 3 |
Since 2006 (last 20 years) | 6 |
Descriptor
Electronics | 38 |
Science Activities | 38 |
Science Experiments | 38 |
Physics | 31 |
Science Education | 21 |
Science Instruction | 21 |
College Science | 20 |
Higher Education | 18 |
Instructional Materials | 10 |
Electric Circuits | 9 |
Laboratory Experiments | 8 |
More ▼ |
Source
Author
Abu Hannifa Abdullah | 1 |
Ashwin Charles | 1 |
Casabella, P. A. | 1 |
Chikkur, G. C. | 1 |
Ching, W. K. | 1 |
Chohan, Balwant S. | 1 |
Cleveland, Joseph R. | 1 |
Collings, Peter J. | 1 |
Danielson, Sarah A. | 1 |
Dart, S. Leonard | 1 |
Davies, Tony | 1 |
More ▼ |
Publication Type
Journal Articles | 28 |
Reports - Descriptive | 14 |
Guides - Classroom - Teacher | 9 |
Guides - Classroom - Learner | 3 |
Guides - Non-Classroom | 1 |
Reference Materials -… | 1 |
Reference Materials -… | 1 |
Education Level
Elementary Education | 2 |
Early Childhood Education | 1 |
High Schools | 1 |
Higher Education | 1 |
Postsecondary Education | 1 |
Primary Education | 1 |
Secondary Education | 1 |
Audience
Practitioners | 16 |
Teachers | 4 |
Community | 1 |
Parents | 1 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Abu Hannifa Abdullah; Ashwin Charles; Zulhelmi Ismail – Journal of Chemical Education, 2023
Recently, smart sensing/actuation paper has attracted significant interest due to its potential usage as a sustainable component in future electronics, robotics, and intelligent sensing devices. In acknowledging the importance of this topic for the engagement of students at the university level in conjunction with Industrial Revolution 4.0, it is…
Descriptors: Chemistry, Science Experiments, Scientific Concepts, Electronics
Vera, Francisco; Ortiz, Manuel; Romero-Maltrana, Diego; Horta-Rangel, Francisco Antonio – Physics Teacher, 2018
In this work we describe a simple setup for measuring electrostatic charge and polarity in electrostatic experiments. This low-cost detector only requires a graphite pencil, a capacitor, two switches, and a voltmeter, and holds the promise of transforming qualitative activities that are commonly used to teach electrostatics into quantitative…
Descriptors: Electronics, Electronic Equipment, Measurement, Science Experiments
Planinsic, Gorazd; Etkina, Eugenia – Physics Education, 2019
In this paper we present activities that can help students deepen their understanding of DC circuits and develop practical competences. The students investigate electric properties of commercially available conductive thread and solve a practical design task using the thread. The activities follow the framework of investigative science learning…
Descriptors: Science Instruction, Physics, Engineering, Interdisciplinary Approach
Davies, Tony – Primary Science, 2014
Teaching children about circuits and the way electricity works is a "tricky business" because it is invisible. Just imagine all eyes are on the teacher as he or she produces for the class what looks like a ping-pong ball and then, with a wave of their hand, the incredible happens! This wonderful white sphere begins to glow red and a…
Descriptors: Science Instruction, Elementary School Science, Electronics, Scientific Concepts
Mott, Jenna R.; Munson, Paul J.; Kreuter, Rodney A.; Chohan, Balwant S.; Sykes, Danny G. – Journal of Chemical Education, 2014
The teaching of instrumental analysis for many small colleges and high schools continues to be stymied by high-cost, complicated maintenance, high power requirements, and often the sheer bulk of the instrumentation. Such issues have led us to develop inexpensive instruments as part of a SMILE initiative (small, mobile instruments for laboratory…
Descriptors: Measurement Equipment, Chemistry, Electronics, Instrumentation
Kraftmakher, Yaakov – Physics Education, 2011
The capacitance versus voltage relationship (the "C-V" characteristic) of a varicap is determined, and the device is used for tuning an "LC" circuit and for building a voltage-controlled oscillator. With a data-acquisition system, the "C-V" characteristic can be demonstrated in a short time. The necessary equipment includes a function generator,…
Descriptors: Science Instruction, Physics, Science Experiments, Laboratory Equipment
Kocijancic, Slavko; O'Sullivan, Colm – Physics Education, 2004
Modern low-cost data acquisition systems enable pupils to study the voltage-current characteristics of a wide range of different materials and devices in a quick and convenient way. In particular, it is possible to study materials, such as meat and vegetables, not normally associated with school physics experiments.
Descriptors: Physics, Electronics, Energy, Science Activities

Getzin, Donald R. – Journal of Chemical Education, 1971
Descriptors: Chemistry, Electronics, Instructional Materials, Science Activities

Kammer, D. W.; Glathart, J. L. – American Journal of Physics, 1970
Descriptors: College Science, Electric Circuits, Electronics, Instruction

Inman, Fred W.; Miller, Carl E. – American Journal of Physics, 1973
The ratio of electronic charge to Boltzmann's constant can be easily determined by measuring the short-circuit collector current versus the emitter-base voltage characteristic of a silicon transistor connected in the common-base mode. (Author/DF)
Descriptors: College Science, Electricity, Electronics, Instructional Materials

Johns, Robert H. – Physics Teacher, 1974
Discusses the use of two television sets with UHF coverage and a window screen or aluminum foil reflector to conduct a take-home experiment in physics. (CC)
Descriptors: Assignments, College Science, Electronics, Homework

Reichert, Jonathan F. – American Journal of Physics, 1972
Descriptors: College Science, Electronic Equipment, Electronics, Instructional Materials

Kwasnoski, John B. – American Journal of Physics, 1972
Descriptors: Electronics, Instructional Materials, Laboratory Experiments, Laboratory Techniques

Ching, W. K.; And Others – Physics Teacher, 1994
Students construct a Sierpinski gasket from resistors and measure its resistance as a function of size. Provides a brief review of what it means geometrically for the Sierpinski gasket to be fractal, followed by an explanation of how to analyze the electrical resistance on a gasket to find its fractal behavior. (MVL)
Descriptors: Electricity, Electronics, Fractals, Higher Education
Fodor, Jerry A. – Scientific American, 1981
Describes several different philosophies of mind with each philosophy's explanation of the mind-body problem. Philosophies discussed include dualism, materialism, functionalism, radical behaviorism, logical behaviorism and central-state identity. (DS)
Descriptors: Electronics, Energy, Higher Education, Lasers